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Novel diversity of polar Cyanobacteria revealed by genome-resolved metagenomics

Benthic microbial mats dominated by Cyanobacteria are important features of polar lakes. Although culture-independent studies have provided important insights into the diversity of polar Cyanobacteria, only a handful of genomes have been sequenced to date. Here, we applied a genome-resolved metageno...

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Autores principales: Pessi, Igor S., Popin, Rafael V., Durieu, Benoit, Lara, Yannick, Tytgat, Bjorn, Savaglia, Valentina, Roncero-Ramos, Beatriz, Hultman, Jenni, Verleyen, Elie, Vyverman, Wim, Wilmotte, Annick
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Microbiology Society 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10438808/
https://www.ncbi.nlm.nih.gov/pubmed/37417735
http://dx.doi.org/10.1099/mgen.0.001056
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author Pessi, Igor S.
Popin, Rafael V.
Durieu, Benoit
Lara, Yannick
Tytgat, Bjorn
Savaglia, Valentina
Roncero-Ramos, Beatriz
Hultman, Jenni
Verleyen, Elie
Vyverman, Wim
Wilmotte, Annick
author_facet Pessi, Igor S.
Popin, Rafael V.
Durieu, Benoit
Lara, Yannick
Tytgat, Bjorn
Savaglia, Valentina
Roncero-Ramos, Beatriz
Hultman, Jenni
Verleyen, Elie
Vyverman, Wim
Wilmotte, Annick
author_sort Pessi, Igor S.
collection PubMed
description Benthic microbial mats dominated by Cyanobacteria are important features of polar lakes. Although culture-independent studies have provided important insights into the diversity of polar Cyanobacteria, only a handful of genomes have been sequenced to date. Here, we applied a genome-resolved metagenomics approach to data obtained from Arctic, sub-Antarctic and Antarctic microbial mats. We recovered 37 metagenome-assembled genomes (MAGs) of Cyanobacteria representing 17 distinct species, most of which are only distantly related to genomes that have been sequenced so far. These include (i) lineages that are common in polar microbial mats such as the filamentous taxa Pseudanabaena , Leptolyngbya , Microcoleus / Tychonema and Phormidium; (ii) the less common taxa Crinalium and Chamaesiphon ; (iii) an enigmatic Chroococcales lineage only distantly related to Microcystis ; and (iv) an early branching lineage in the order Gloeobacterales that is distributed across the cold biosphere, for which we propose the name Candidatus Sivonenia alaskensis. Our results show that genome-resolved metagenomics is a powerful tool for expanding our understanding of the diversity of Cyanobacteria, especially in understudied remote and extreme environments.
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spelling pubmed-104388082023-08-19 Novel diversity of polar Cyanobacteria revealed by genome-resolved metagenomics Pessi, Igor S. Popin, Rafael V. Durieu, Benoit Lara, Yannick Tytgat, Bjorn Savaglia, Valentina Roncero-Ramos, Beatriz Hultman, Jenni Verleyen, Elie Vyverman, Wim Wilmotte, Annick Microb Genom Research Articles Benthic microbial mats dominated by Cyanobacteria are important features of polar lakes. Although culture-independent studies have provided important insights into the diversity of polar Cyanobacteria, only a handful of genomes have been sequenced to date. Here, we applied a genome-resolved metagenomics approach to data obtained from Arctic, sub-Antarctic and Antarctic microbial mats. We recovered 37 metagenome-assembled genomes (MAGs) of Cyanobacteria representing 17 distinct species, most of which are only distantly related to genomes that have been sequenced so far. These include (i) lineages that are common in polar microbial mats such as the filamentous taxa Pseudanabaena , Leptolyngbya , Microcoleus / Tychonema and Phormidium; (ii) the less common taxa Crinalium and Chamaesiphon ; (iii) an enigmatic Chroococcales lineage only distantly related to Microcystis ; and (iv) an early branching lineage in the order Gloeobacterales that is distributed across the cold biosphere, for which we propose the name Candidatus Sivonenia alaskensis. Our results show that genome-resolved metagenomics is a powerful tool for expanding our understanding of the diversity of Cyanobacteria, especially in understudied remote and extreme environments. Microbiology Society 2023-07-07 /pmc/articles/PMC10438808/ /pubmed/37417735 http://dx.doi.org/10.1099/mgen.0.001056 Text en © 2023 The Authors https://creativecommons.org/licenses/by/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution License.
spellingShingle Research Articles
Pessi, Igor S.
Popin, Rafael V.
Durieu, Benoit
Lara, Yannick
Tytgat, Bjorn
Savaglia, Valentina
Roncero-Ramos, Beatriz
Hultman, Jenni
Verleyen, Elie
Vyverman, Wim
Wilmotte, Annick
Novel diversity of polar Cyanobacteria revealed by genome-resolved metagenomics
title Novel diversity of polar Cyanobacteria revealed by genome-resolved metagenomics
title_full Novel diversity of polar Cyanobacteria revealed by genome-resolved metagenomics
title_fullStr Novel diversity of polar Cyanobacteria revealed by genome-resolved metagenomics
title_full_unstemmed Novel diversity of polar Cyanobacteria revealed by genome-resolved metagenomics
title_short Novel diversity of polar Cyanobacteria revealed by genome-resolved metagenomics
title_sort novel diversity of polar cyanobacteria revealed by genome-resolved metagenomics
topic Research Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10438808/
https://www.ncbi.nlm.nih.gov/pubmed/37417735
http://dx.doi.org/10.1099/mgen.0.001056
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